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Q-222-032 

 

 

7.2 Performance 

 

Item 

Specification 

Class index 

2.0 

Response time 

1 second or less 

Ripple 

1%p-p or less 

Fluctuation value 
of influence due 
to ambient 
temperature 

Usage group I 
・Within the class index at 10 to 35℃ 
・Within two times the class index at 0 to 45℃ 
・Within three times the class index at -10 to 55℃ 

Fluctuation value 
of influence due 
to input amount 
distortion 

Within two times the class index at 20% of the 3rd harmonic 
The error may be large in the measurement at the following inverter output. 
・Cycle control 
・PWM inverter 
・SCR phase angle control 

Adjustment range 

The output adjustment range is BIAS:±5% of the output span, MAX.:±5% of the output 
span.  Use only when adjustment is required for matching with connected devices. 

Low input cut 

Output equivalent to the power factor 1 for power receiving at less than 10% of the  
rated voltage. 
Output equivalent to the power factor 1 for power receiving at less than 2% of the  
rated current. 

Output limiter 

-20%, 120% (Second quadrant:% of output span on the power receiving LAG side) 
・For 4 to 20mA output, 2.4mA, 21.6mA 
・For ±5V output, -6V, 6V 
-20%, 120% (Fourth quadrant:% of output span on the power receiving LAG side) 
・For 4 to 20mA output, 3.2mA, 20.8mA 
・For ±5V output, -5.5V, 5.5V 
If the input specifications are LEAD 0 to 1 to LAG 0, there is no output limiter. 

Operation method 

Calculated from active power and reactive power (time division multiplication method) 

 

Summary of Contents for FSPTT2-92A-33

Page 1: ...Q 222 032 INSTRUCTION MANUAL POWER FLOW THREE PHASE POWER FACTOR TRANSDUCER FSPTT2 92A 33...

Page 2: ...ase do not install in the place where sunlight hits directly Discoloration and degradation of a name plate and deformation of the case by the surface temperature rise may occur If the average daily te...

Page 3: ...our company Failure caused by violating various conditions regarding use storage etc specified by the supplier When the faults or defects are caused by a reason not belongs to purchased or delivered p...

Page 4: ...thod 4 5 Connection 6 6 Handling explanation 7 7 Specification 7 1 Rating 7 7 2 Performance 8 7 3 Electrical strength Mechanical strength 9 7 4 Noise immunity 9 7 5 EMC 10 7 6 Structure and environmen...

Page 5: ...with a width of 35mm The terminal cover is standard equipment 3 Bundled items Inspection certificate 1 Packed in an envelope Terminal screw in a bag M4 screw 4 piece set 1 M4 screw 7 piece set 1 4 Mo...

Page 6: ...this product from the IEC DIN rail Please insert a flathead screwdriver in the hole where a slider is square Next a slider is lowered in the direction of an arrow This product can be removed from the...

Page 7: ...g torque 1 0 to 1 3 N m Connection diagram 3 1 2 S1 AUX SUPPLY P1 1L 1S 3S S2 P2 OUTPUT A B 3L E LOAD Grounding is class D grounding grounding resistance 100 or less If there is a power line that caus...

Page 8: ...ed current Indefinite 6 The output value when only the auxiliary power supply is applied or when the auxiliary power supply and voltage input are applied is the output equivalent to the power factor 1...

Page 9: ...tment range is BIAS 5 of the output span MAX 5 of the output span Use only when adjustment is required for matching with connected devices Low input cut Output equivalent to the power factor 1 for pow...

Page 10: ...ond of rated voltage 10 times 10 second intervals 40 times 1 second and 20 times 4 seconds and 10 times 16 seconds of rated current 2 times 1 minute intervals 10 times 1 second of rated current 5 time...

Page 11: ...61000 4 6 Power frequency magnetic field immunity test Frequency 50 60Hz Field strength 30A m Performance standard A During testing Within 20 error After test Within inherent error EN61000 6 2 EN61000...

Page 12: ...its 10 to 55 5 to 90 RH Non condensing Storage temperature limits 40 to 70 Product warranty period One year period 7 7 Technical standards Item Specification Transducer JIS C 1111 2019 IEC 60688 2012...

Page 13: ...0 5 1 0 5 0 LEAD LAG LEAD LAG INPUT Power transmission Power receiving V mA 3 12 OUTPUT 5 20 1 4 4 16 2 8 0 0 5 1 0 5 0 0 5 1 0 5 0 LEAD LAG LEAD LAG INPUT Power transmission Power receiving V mA 2 5...

Page 14: ...cated on the name plate or a simulated load with the same resistance value as the actual load 2 Apply the auxiliary power supply rated and the input equivalent to 50 of the rated output value and ener...

Page 15: ...ving DC0 to 2 5 to 5V 3 DC20 to 57V 4 Power transmission DC0 to 5 to 10V 2k or more Z Other Power receiving DC0 to 5 to 10V 5 Power transmission DC1 to 3 to 5V 600 or more Power receiving DC1 to 3 to...

Page 16: ...receiving DC3 to 4 to 5V 6 Power transmission DC 5 to 2 5 to 0V 600 or more Power receiving DC0 to 2 5 to 5V 7 Power transmission DC 10 to 5 to 0V 2k or more Power receiving DC0 to 5 to 10V A Power tr...

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